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Preparation of 1° Amines: Azide Synthesis01:22

Preparation of 1° Amines: Azide Synthesis

3.8K
Direct alkylation of ammonia produces polyalkylated amines, along with a quaternary ammonium salt. To exclusively prepare primary amines, the azide synthesis method can be used.
Azide ions act as good nucleophiles and react with unhindered alkyl halides to form alkyl azides. Alkyl azides do not participate in further nucleophilic substitution reactions, thereby eliminating the chances of polyalkylated products. Alkyl azides are reduced by hydride-based reducing agents, like lithium aluminum...
3.8K
1° Amines to Diazonium or Aryldiazonium Salts: Diazotization with NaNO2 Mechanism01:37

1° Amines to Diazonium or Aryldiazonium Salts: Diazotization with NaNO2 Mechanism

3.7K
Nitrous acid is a relatively weak and unstable acid prepared in situ by the reaction of sodium nitrite and cold, dilute hydrochloric acid. In an acidic solution, the nitrous acid undergoes protonation when it loses water to form a nitrosonium ion—an electrophile. Nitrous acid reacts with primary amines to give diazonium salts. The reaction is called diazotization of primary amines.
3.7K
Ziegler–Natta Chain-Growth Polymerization: Overview01:17

Ziegler–Natta Chain-Growth Polymerization: Overview

3.2K
Ziegler–Natta polymerization is another form of addition or chain‐growth polymerization used for synthesizing linear polymers over branched polymers. The catalyst used for polymerization is the Ziegler–Natta catalyst, named after Karl Ziegler and Giulio Natta, who developed it in 1953. This catalyst is an organometallic complex of titanium tetrachloride and triethyl aluminum, with the active form of the catalyst being an alkyl titanium compound. Using the Ziegler–Natta...
3.2K
Preparation of Nitriles01:12

Preparation of Nitriles

2.0K
One of the common methods to prepare nitriles is the dehydration of amides. This method requires strong dehydrating agents like phosphorous pentoxide or boiling acetic anhydride for converting amides to nitriles. Another reagent namely, thionyl chloride also accomplishes the dehydration of amides, where amide acts as a nucleophile. The first step of the mechanism involves the nucleophilic attack by the amide on the thionyl chloride to form an intermediate. In the next step, the electron pairs...
2.0K
Preparation of Amines: Alkylation of Ammonia and Amines01:30

Preparation of Amines: Alkylation of Ammonia and Amines

3.2K
Alkylation is one of the methods used to prepare amines. Direct alkylation of ammonia or a primary amine with an alkyl halide gives polyalkylated amines along with a quaternary ammonium salt through successive SN2 reactions. This process of making the quaternary salt through the direct alkylation method is called exhaustive alkylation.
Each alkylation step makes the nitrogen center more nucleophilic, which triggers successive alkylations until a quaternary ammonium salt is formed. Considering...
3.2K
Preparation of 1° Amines: Gabriel Synthesis01:28

Preparation of 1° Amines: Gabriel Synthesis

3.5K
Direct alkylation is not a suitable method for synthesizing amines because it produces polyalkylated products. Gabriel synthesis is the most preferred method to exclusively make primary amines. The method uses phthalimide, which contains a protected form of nitrogen that participates in alkylation only once to predominantly give primary amines.
Strong bases like NaOH or KOH deprotonate the phthalimide to form the corresponding anion, which acts as a nucleophile. Further, the anion attacks an...
3.5K

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Related Experiment Video

Updated: Jun 6, 2025

Synthesis of Zeolites Using the ADOR Assembly-Disassembly-Organization-Reassembly Route
08:26

Synthesis of Zeolites Using the ADOR Assembly-Disassembly-Organization-Reassembly Route

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Nitride Zeolites from Ammonothermal Synthesis.

Florian M Engelsberger1, Wolfgang Schnick1

  • 1Department of Chemistry, Ludwig-Maximilians-Universität München, Butenandtstraße 5-13, 81377, Munich, Germany.

Chemistry (Weinheim an Der Bergstrasse, Germany)
|December 3, 2024
PubMed
Summary

Ammonothermal synthesis successfully created novel nitride zeolites using supercritical ammonia. This method offers a direct route from elemental materials to complex (oxo)nitridosilicate structures.

Keywords:
Ammonothermal synthesisNitridesNitridosilicatesSolid-state reactionsZeolites

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Area of Science:

  • Materials Science
  • Inorganic Chemistry
  • Crystallography

Background:

  • Oxide zeolites are typically synthesized via hydrothermal methods.
  • Synthesizing nitride zeolites requires a nitrogen-rich solvent, with ammonia being a suitable candidate.

Purpose of the Study:

  • To explore the ammonothermal synthesis of nitride zeolites.
  • To achieve targeted synthesis of single crystals of (oxo)nitridosilicate compounds.
  • To characterize the structure and composition of newly synthesized materials.

Main Methods:

  • Ammonothermal synthesis utilizing supercritical ammonia as a solvent.
  • Employing mineralizers such as NaN3, Li3N, and KN3.
  • Structural characterization via X-ray diffraction.
  • Elemental analysis using energy-dispersive X-ray (EDX) spectroscopy.
  • Confirmation of oxygen incorporation using FTIR, CHARDI, and BVS calculations.

Main Results:

  • Successful synthesis of three (oxo)nitridosilicate compounds: Ce3[Si6N11], Li2RE4[Si4N8]O3 (RE=La, Ce), and K1.25Ce7.75[Si11N21O2]O0.75.
  • Formation of large single crystals facilitated by supercritical ammonia and specific mineralizers.
  • Crystal structures exhibit diverse ring sizes within their tetrahedral networks.
  • Elemental composition and oxygen incorporation were confirmed.

Conclusions:

  • Ammonothermal synthesis is an effective one-step method for producing nitride zeolites from elemental precursors.
  • The choice of mineralizer significantly influences the formation of (oxo)nitridosilicate structures.
  • The synthesized materials possess zeolite-like structures with unique network topologies.